Wiedmer S K, Holopainen J M, Mustakangas P, Kinnunen P K, Riekkola M L
Department of Chemistry, Institute of Biomedicine, University of Helsinki, Finland.
Electrophoresis. 2000 Sep;21(15):3191-8. doi: 10.1002/1522-2683(20000901)21:15<3191::AID-ELPS3191>3.0.CO;2-J.
Liposomes are small membrane-enclosed vesicles composed of either natural or synthetic lipids. Their size can be adjusted on a wide scale and they can be made with well-defined compositions. While liposomes have been extensively used as model biomembranes they have also gained a considerable degree of attention as carriers for drugs as well as for genetic material. The physical properties of liposomes are critically dependent on their chemical composition. In this study liposomes were applied as pseudostationary phases in electrokinetic capillary chromatography. Various negatively charged liposomes, consisting of mixtures of zwitterionic and anionic lipids, were investigated. Major emphasis was put on clarifying the effects of the total lipid concentration, the lipid molar ratio, the lipid head group, and the buffer on the capillary electrophoretic separation of neutral analytes. In addition, the influence of the physical state of the membrane, ie., gel vs. fluid, on the separation was investigated. Corticosteroids were applied as model analytes.
脂质体是由天然或合成脂质构成的小的膜包裹囊泡。其大小可在很大范围内调节,并且可以制成具有明确组成的脂质体。虽然脂质体已被广泛用作模型生物膜,但它们作为药物以及遗传物质的载体也受到了相当程度的关注。脂质体的物理性质严重依赖于其化学组成。在本研究中,脂质体被用作电动毛细管色谱中的假固定相。研究了由两性离子和阴离子脂质混合物组成的各种带负电荷的脂质体。主要重点在于阐明总脂质浓度、脂质摩尔比、脂质头部基团和缓冲液对中性分析物毛细管电泳分离的影响。此外,还研究了膜的物理状态(即凝胶态与流体态)对分离的影响。皮质类固醇用作模型分析物。